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The bornavirus-derived human protein EBLN1 promotes efficient cell cycle transit, microtubule organisation and genome stability.

机译:源自病毒的人类蛋白质EBLN1促进有效的细胞周期转运,微管组织和基因组稳定性。

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摘要

It was recently discovered that vertebrate genomes contain multiple endogenised nucleotide sequences derived from the non-retroviral RNA bornavirus. Strikingly, some of these elements have been evolutionary maintained as open reading frames in host genomes for over 40 million years, suggesting that some endogenised bornavirus-derived elements (EBL) might encode functional proteins. EBLN1 is one such element established through endogenisation of the bornavirus N gene (BDV N). Here, we functionally characterise human EBLN1 as a novel regulator of genome stability. Cells depleted of human EBLN1 accumulate DNA damage both under non-stressed conditions and following exogenously induced DNA damage. EBLN1-depleted cells also exhibit cell cycle abnormalities and defects in microtubule organisation as well as premature centrosome splitting, which we attribute in part, to improper localisation of the nuclear envelope protein TPR. Our data therefore reveal that human EBLN1 possesses important cellular functions within human cells, and suggest that other EBLs present within vertebrate genomes may also possess important cellular functions.
机译:最近发现,脊椎动物基因组包含多个源自非逆转录病毒RNA博纳病毒的内源核苷酸序列。令人惊讶的是,其中一些元素作为宿主基因组中的开放阅读框已经进化了4000万多年,这表明某些内源性博大病毒衍生元素(EBL)可能编码功能蛋白。 EBLN1是一种通过博纳病毒N基因(BDV N)的内源化而建立的元件。在这里,我们功能上将人类EBLN1表征为基因组稳定性的新型调节剂。耗尽人类EBLN1的细胞在非应激条件下以及外源诱导的DNA损伤后都会积累DNA损伤。耗尽EBLN1的细胞还表现出细胞周期异常和微管组织缺陷,以及过早的中心体分裂,这部分归因于核被膜蛋白TPR的不适当定位。因此,我们的数据揭示了人EBLN1在人细胞中具有重要的细胞功能,并表明存在于脊椎动物基因组中的其他EBLs也可能具有重要的细胞功能。

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